In the Earth-Moon system, low-energy orbits are transfer trajectories from the earth to a circumlunar orbit that require less propellant consumption when compared to the traditional methods. In this work we use a Monte Carlo approach to study a great number of such transfer orbits over a wide range of initial conditions. We make statistical and operational considerations on the resulting data, leading to the description of a reliable way of finding "optimal" mission orbits with the tools of multi-objective optimization
The use of CubeSats as space observation missions is now a reality. CubeSats are satellites in the c...
The use of CubeSats as space observation missions is now a reality. CubeSats are satellites in the c...
In this work we merge together the low-thrust propulsion and the invariant manifold technique to des...
The low-thrust version of the low energy transfers to the Moon exploiting the structure of the invar...
The low-thrust version of the low energy transfers to the Moon exploiting the structure of the invar...
The low-thrust version of the low energy transfers to the Moon exploiting the structure of the invar...
The low-thrust version of the low energy transfers to the Moon exploiting the structure of the invar...
The low-thrust version of the low energy transfers to the Moon exploiting the structure of the invar...
This paper deals with the design and optimization of transfer trajectories from the Earth to the Moo...
The low-thrust version of the low energy transfers to the Moon exploiting the structure of the invar...
Low-energy transfers utilizing multi-body dynamics show great promise for future space exploration; ...
This paper presents an optimization procedure to generate fast and low-∆v Earth-Moon transfer trajec...
This paper presents an optimization procedure to generate fast and low-∆v Earth-Moon transfer trajec...
: In the frame of the lunar exploration, numerous future space mis-sions will require maximization o...
AbstractThe optimization of the Earth-moon trajectory using solar electric propulsion is presented. ...
The use of CubeSats as space observation missions is now a reality. CubeSats are satellites in the c...
The use of CubeSats as space observation missions is now a reality. CubeSats are satellites in the c...
In this work we merge together the low-thrust propulsion and the invariant manifold technique to des...
The low-thrust version of the low energy transfers to the Moon exploiting the structure of the invar...
The low-thrust version of the low energy transfers to the Moon exploiting the structure of the invar...
The low-thrust version of the low energy transfers to the Moon exploiting the structure of the invar...
The low-thrust version of the low energy transfers to the Moon exploiting the structure of the invar...
The low-thrust version of the low energy transfers to the Moon exploiting the structure of the invar...
This paper deals with the design and optimization of transfer trajectories from the Earth to the Moo...
The low-thrust version of the low energy transfers to the Moon exploiting the structure of the invar...
Low-energy transfers utilizing multi-body dynamics show great promise for future space exploration; ...
This paper presents an optimization procedure to generate fast and low-∆v Earth-Moon transfer trajec...
This paper presents an optimization procedure to generate fast and low-∆v Earth-Moon transfer trajec...
: In the frame of the lunar exploration, numerous future space mis-sions will require maximization o...
AbstractThe optimization of the Earth-moon trajectory using solar electric propulsion is presented. ...
The use of CubeSats as space observation missions is now a reality. CubeSats are satellites in the c...
The use of CubeSats as space observation missions is now a reality. CubeSats are satellites in the c...
In this work we merge together the low-thrust propulsion and the invariant manifold technique to des...